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A novel approach for designing large-scale river temperature monitoring networks

机译:一种设计大型河流温度监测网络的新颖方法

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摘要

Water temperature is an important control on processes in aquatic systems and particularly for freshwater fish, affecting growth, survival and demographic characteristics. In recognition of this importance, the Scottish Government has prioritised developing a robust national river temperature monitoring network. Advances in geographical information systems, spatial statistics and field data loggers make large-scale river temperature monitoring increasingly possible. However, duplication of environmental and thermal characteristics among monitoring sites means many networks have lower than expected statistical power. This paper describes a novel methodology for network design, illustrated by the development of the Scotland River Temperature Monitoring Network. A literature review identified processes controlling stream temperature and associated landscape controls. Metrics indicative of these landscape controls were calculated for points every 500 m along the river network. From these points, sites were chosen to cover the full range of observed environmental gradients and combinations of controlling variables. The resulting network contains sites with unique characteristics covering the range of relevant environmental characteristics observed in Scottish salmon rivers. The network will thus have minimal redundancy, often not seen in large networks, and high statistical power to separate the relative importance of predictor variables thereby allowing large-scale water temperature predictions.
机译:水温是对水生系统(特别是对淡水鱼)的生产过程的重要控制,影响生长,存活和人口统计特征。认识到这一重要性,苏格兰政府将优先发展稳健的国家河流温度监测网络作为重点。地理信息系统,空间统计和现场数据记录器的进步使大规模河水温度监测成为可能。但是,监视站点之间环境和热特征的重复意味着许多网络的统计能力都低于预期。本文介绍了一种新的网络设计方法,以苏格兰河水温度监测网络的发展为例。文献综述确定了控制河流温度和相关景观控制的过程。对于沿河网每500 m的点计算指示这些景观控制的度量。从这些角度出发,选择站点以覆盖观察到的环境梯度的所有范围以及控制变量的组合。最终的网络包含具有独特特征的站点,这些站点涵盖了在苏格兰鲑鱼河中观察到的相关环境特征的范围。因此,该网络将具有最小的冗余度(通常在大型网络中不常见),并且具有强大的统计能力,可以分隔预测变量的相对重要性,从而可以进行大规模的水温预测。

著录项

  • 来源
    《Nordic hydrology》 |2016年第3期|569-590|共22页
  • 作者单位

    School of Geography, Earth and Environmental Science, University of Birmingham, Birmingham B15 2TT, UK Marine Scotland Science, Scottish Government Freshwater Laboratory, Faskally, Pitlochry PH16 5LB, UK;

    Marine Scotland Science, Scottish Government Freshwater Laboratory, Faskally, Pitlochry PH16 5LB, UK;

    School of Geography, Earth and Environmental Science, University of Birmingham, Birmingham B15 2TT, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    large-scale monitoring; network design; river temperature; Scotland;

    机译:大规模监控;网络设计;河流温度苏格兰;

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